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Carboxylic Acid Transporters in Candida Pathogenesis

机译:羧酸转运蛋白在<斜斜体>念珠菌中的发病机制

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摘要

Opportunistic pathogens such as Candida species can use carboxylic acids, like acetate and lactate, to survive and successfully thrive in different environmental niches. These nonfermentable substrates are frequently the major carbon sources present in certain human body sites, and their efficient uptake by regulated plasma membrane transporters plays a critical role in such nutrient-limited conditions. Here, we cover the physiology and regulation of these proteins and their potential role in Candida virulence. This review also presents an evolutionary analysis of orthologues of the Saccharomyces cerevisiae Jen1 lactate and Ady2 acetate transporters, including a phylogenetic analysis of 101 putative carboxylate transporters in twelve medically relevant Candida species. These proteins are assigned to distinct clades according to their amino acid sequence homology and represent the major carboxylic acid uptake systems in yeast. While Jen transporters belong to the sialate:H ~(+) symporter (SHS) family, the Ady2 homologue members are assigned to the acetate uptake transporter (AceTr) family. Here, we reclassify the later members as ATO (acetate transporter ortholog). The new nomenclature will facilitate the study of these transporters, as well as the analysis of their relevance for Candida pathogenesis.
机译:机会主义病原体,如念珠菌物种可以使用羧酸,如醋酸盐和乳酸,以在不同的环境中生存和成功地茁壮成长。这些非可变的基材通常是某些人体位点中存在的主要碳源,并且其受调节的血浆膜转运蛋白的有效摄取在这种营养有限的条件下起着关键作用。在这里,我们涵盖了这些蛋白质的生理学和调节及其在念珠菌毒力中的潜在作用。该综述还提出了对酿酒酵母肠道乳酸和Ady2醋酸甲酸酯转运蛋白的正交性的进化分析,包括在121个医学上相关的念珠菌物种中对101个推定羧酸盐转运蛋白的系统发育分析。根据其氨基酸序列同源性分配这些蛋白质以不同的曲线,并代表酵母中的主要羧酸摄取系统。虽然Jen运输商属于Sialate:H〜(+)Symporter(SHS)家族,ADY2同源物构件被分配给醋酸酯吸收转运蛋白(acetr)。在这里,我们将后来的成员重新分类为ATO(醋酸酯转运蛋白原子)。新的命名法将促进这些运输工具的研究,以及分析它们对念珠菌发病机制的相关性。

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